Search results for "Cloning"

showing 10 items of 498 documents

Binding and/or hydrolysis of purine‐based nucleotides is not required for IM30 ring formation

2021

IM30, the inner membrane-associated protein of 30 kDa, is conserved in cyanobacteria and chloroplasts. Although its exact physiological function is still mysterious, IM30 is clearly essential for thylakoid membrane biogenesis and/or dynamics. Recently, a cryptic IM30 GTPase activity has been reported, albeit thus far no physiological function has been attributed to this. Yet, it is still possible that GTP binding/hydrolysis affects formation of the prototypical large homo-oligomeric IM30 ring and rod structures. Here, we show that the Synechocystis sp. PCC 6803 IM30 protein in fact is an NTPase that hydrolyzes GTP and ATP, but not CTP or UTP, with about identical rates. While IM30 forms lar…

GTP'Genetic VectorsBiophysicsGene ExpressionGTPaseRing (chemistry)ThylakoidsBiochemistrySubstrate Specificity03 medical and health sciencesAdenosine TriphosphateBacterial ProteinsStructural BiologyEscherichia coliGeneticsNucleotideddc:610Cloning MolecularMolecular BiologyEnzyme Assays030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyChemistryHydrolysis030302 biochemistry & molecular biologySynechocystisSynechocystisMembrane ProteinsCell BiologyNucleoside-Triphosphatasebiology.organism_classificationRecombinant ProteinsKineticsMicroscopy ElectronThylakoidMembrane biogenesisBiophysicsGuanosine TriphosphateBiogenesisProtein BindingFEBS Letters
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Regulated expression and phosphorylation of the 23-26-kDa ras protein in the sponge Geodia cydonium.

1990

We have cloned, sequenced and examined the sponge Geodia cydonium cDNA encoding a protein homologous to ras proteins. The sponge ras protein has a more conserved N-terminal region and a less conserved C-terminal region, especially in comparison to Dictyostelium discoideum; the similarity to human c-Ha-ras-1 and to Saccharomyces cerevisiae is less pronounced. The sponge ras cDNA comprises five TAG triplets; at the translational level these UAG termination codons are suppressed by a Gln-tRNA. The sponge ras protein was isolated and partially purified (23-26 kDa) and found to undergo phosphorylation at a threonine moiety, when dissociated cells were incubated in the presence of a homologous ag…

GTP'Saccharomyces cerevisiaeMolecular Sequence DataGTPaseBiochemistryDictyostelium discoideumProto-Oncogene Proteins p21(ras)Complementary DNASequence Homology Nucleic AcidAnimalsInsulinNCK1Amino Acid SequenceThreonineCloning MolecularPhosphorylationGene LibrarybiologyBase SequenceDNAbiology.organism_classificationMolecular biologyPoriferaMolecular WeightKineticsBiochemistryGene Expression RegulationPhosphorylationEuropean journal of biochemistry
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Identification of SCP2165, a new SCP2-derived plasmid of Streptomyces coelicolor A3(2).

2005

Aims:  Characterization of SCP2165, a plasmid identified in the Gram-positive bacterium Streptomyces coelicolor A3(2). Methods and Results:  Pulsed-field gel electrophoresis (PFGE) of mycelia of a S. coelicolor strain embedded in low melting agarose revealed the presence of a plasmid. Restriction enzyme mapping and sequence analysis of a 2·1 kb fragment revealed that this plasmid could be SCP2. SCP2 and its spontaneous derivative SCP2* are self-transmissible plasmids and have chromosome mobilizing ability (c.m.a.). SCP2* has a c. 1000-fold increased c.m.a. compared with SCP2. Interestingly the plasmid, named SCP2165, shows a c.m.a. from 5 × 10−2 to 1 × 10−1 which is 50–100-fold higher than …

Gel electrophoresisPlasmid preparationRecombination GeneticbiologyGene Transfer HorizontalSequence analysisStreptomycetaceaeStreptomyces coelicolorCloning vectorStreptomyces coelicolorbiology.organism_classificationApplied Microbiology and BiotechnologyStreptomycesMolecular biologyElectrophoresis Gel Pulsed-FieldPlasmidConjugative plasmids Pulsed-field gel electrophoresis SCP2 SCP2 derived plasmids Streptomyces coelicolorConjugation GeneticCrosses GeneticPlasmidsLetters in applied microbiology
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Crystal Structure of the Maturation Protein from Bacteriophage Qβ

2017

Abstract Virions of the single-stranded RNA bacteriophages contain a single copy of the maturation protein, which is bound to the phage genome and is required for the infectivity of the particles. The maturation protein mediates the adsorption of the virion to bacterial pili and the subsequent release and penetration of the genome into the host cell. Here, we report a crystal structure of the maturation protein from bacteriophage Qβ. The protein has a bent, highly asymmetric shape and spans 110 A in length. Apart from small local substructures, the overall fold of the maturation protein does not resemble that of other known proteins. The protein is organized in two distinct regions, an α-he…

Gene Expression Regulation Viral0301 basic medicineVesicle-associated membrane protein 8Protein ConformationRNA-binding proteinRNA PhagesPilus03 medical and health sciencesStructural BiologyBacteriophagesAmino Acid SequenceCloning MolecularMolecular Biology030102 biochemistry & molecular biologybiologyCryoelectron MicroscopyVirionRNA Phagesbiology.organism_classificationMolecular biologyProtein tertiary structureCell biology030104 developmental biologyCapsidbiology.proteinRNA ViralCapsid ProteinsProtein GBacteriophage QβJournal of Molecular Biology
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Identification of a Ligand on the Wip1 Bacteriophage Highly Specific for a Receptor on Bacillus anthracis

2013

ABSTRACT Tectiviridae is a family of tailless bacteriophages with Gram-negative and Gram-positive hosts. The family model PRD1 and its close relatives all infect a broad range of enterobacteria by recognizing a plasmid-encoded conjugal transfer complex as a receptor. In contrast, tectiviruses with Gram-positive hosts are highly specific to only a few hosts within the same bacterial species. The cellular determinants that account for the observed specificity remain unknown. Here we present the genome sequence of Wip1, a tectivirus that infects the pathogen Bacillus anthracis . The Wip1 genome is related to other tectiviruses with Gram-positive hosts, notably, AP50, but displays some interest…

Gene Expression Regulation ViralMolecular Sequence DataGenome ViralBiologyLigandsMicrobiologyGenomeBacteriophageSpecies SpecificityCloning MolecularMolecular BiologyGenomic organizationGeneticsTectivirusGene Expression Regulation BacterialArticlesLigand (biochemistry)biology.organism_classificationBacillus anthracisMicroscopy FluorescenceCapsidBacillus anthracisDNA ViralReceptors VirusTectiviridaeTectiviridaeJournal of Bacteriology
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Characterization of the apical membrane antigen-1 in Italian strains of Babesia bigemina

2010

Babesia bigemina is a parasite endemic in different parts of the world, including Europe and the Americas. One of the few genes characterized in this species codifies for the Apical Membrane Antigen 1 (AMA-1), a trans-membrane antigen recently identified. In this research, we characterized the ama-1 gene from three Italian B. bigemina strains, two B. bigemina strains obtained from Ragusa, Sicily (ITA1 and ITA3) and a third one obtained from Benevento, Campania (ITA2). Italian sequences were compared with those of the Australian strain obtained from the Sanger Institute web site and to strains from different parts of the world. The results obtained confirmed that this newly described ama-1 g…

Gene Expression RegulationMolecular Sequence DataProtozoan ProteinsAnimalsBabesiaMembrane ProteinsAntigens ProtozoanAmino Acid SequenceCloning MolecularSettore BIO/06 - Anatomia Comparata E Citologiaapical membrane antigen-1 Babesia bigemina vaccine candidates
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Functional analysis of the isoforms of an ABI3-like factor of Pisum sativum generated by alternative splicing

2009

At least seven isoforms (PsABI3-1 to PsABI3-7) of a putative, pea ABI3-like factor, originated by alternative splicing, have been identified after cDNA cloning. A similar variability had previously only been described for monocot genes. The full-length isoform, PsABI3-1, contains the typical N-terminal acidic domains and C-terminal basic subdomains, B1 to B3. Reverse transcriptase-PCR analysis revealed that the gene is expressed just in seeds, starting at middle embryogenesis; no gene products are observed in embryo axes after 18 h post-imbibition although they are more persistent in cotyledons. The activity of the isoforms was studied by yeast one-hybrid assays. When yeast was transformed …

Gene isoformABI3PhysiologyABI5Molecular Sequence DataPlant ScienceBiologyAbscisic acidComplementary DNAGene expressionProtein IsoformsArabidopsis thalianaAmino Acid SequenceCloning MolecularGenePlant ProteinsBase SequenceAlternative splicingisoformsPeasfood and beveragesDNA-binding domainbiology.organism_classificationResearch PapersAlternative SplicingProtein TransportABABiochemistryRNA splicingProtein BindingJournal of Experimental Botany
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Origin of the interferon-inducible (2′-5′)oligoadenylate synthetases: cloning of the (2′-5′)oligoadenylate synthetase from the marine spongeGeodia cy…

1999

In vertebrates cytokines mediate innate (natural) immunity and protect them against viral infections. The cytokine interferon causes the induction of the (2′-5′)oligoadenylate synthetase [(2-5)A synthetase], whose product, (2′-5′)oligoadenylate, activates the endoribonuclease L which in turn degrades (viral) RNA. Three isoforms of (2-5)A synthetases exist, form I (40–46 kDa), form II (69 kDa), and form III (100 kDa). Until now (2-5)A synthetases have only been cloned from birds and mammals. Here we describe the cloning of the first putative invertebrate (2-5)A synthetase from the marine sponge Geodia cydonium. The deduced amino acid sequence shows signatures characteristic for (2-5)A synthe…

Gene isoformCloningGeneticsInnate immune system2'-5'-OligoadenylateBiophysicsRNACell BiologyBiologyBiochemistryBiochemistryStructural BiologyInterferonGene duplicationGeneticsmedicineMolecular BiologyPeptide sequencemedicine.drugFEBS Letters
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Comparative analysis of zebrafish nos2a and nos2b genes

2008

Abstract Nitric oxide synthase (NOS) produces nitric oxide (NO) from arginine. Three NOS isoforms have been identified in mammals, namely a neuronal (NOS1), an inducible (NOS2) and an endothelial (NOS3) enzyme. In zebrafish genome, one nos1 gene and two nos2 genes (nos2a and nos2b) were observed. We cloned zebrafish nos2a cDNA and compared nos2a and nos2b sequences, expression and inducibility. When analyzed by reverse transcription-PCR, the expression of nos2a remained very low during initial development, then increased at 96 hpf, while nos2b was expressed from 6 hpf and subsequently remained stable. Expression of nos2a is detected in the head, eye and gut regions by WISH experiments perfo…

Gene isoformEmbryo Nonmammaliananimal structuresNOS1Molecular Sequence DataNitric Oxide Synthase Type IISyntenyGene Expression Regulation EnzymologicGene DuplicationComplementary DNAparasitic diseasesGene duplicationGeneticsAnimalsAmino Acid SequenceCloning MolecularGeneZebrafishCells CulturedPhylogenyZebrafishSequence Homology Amino AcidbiologyRegeneration (biology)fungiGene Expression Regulation DevelopmentalGeneral Medicinebiology.organism_classificationMolecular biologyIsoenzymesNitric oxide synthasebiology.proteinGene
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Efficient Expression and Crystallization System of Cancer-Associated Carbonic Anhydrase Isoform IX.

2015

Human carbonic anhydrase IX (CA IX) is overexpressed in a number of solid tumors and is considered to be a marker for cellular hypoxia that it is not produced in most normal tissues. CA IX contributes to the acidification of the extracellular matrix, which, in turn, favors tumor growth and metastasis. Therefore, CA IX is considered to be a promising anti-cancer drug target. However, the ability to specifically target CA IX is challenging due to the fact that the human genome encodes 15 different carbonic anhydrase isoforms that have a high degree of homology. Furthermore, structure-based drug design of CA IX inhibitors so far has been largely unsuccessful due to technical difficulties regar…

Gene isoformModels MolecularAntineoplastic AgentsIsozymePichiaPichia pastorisSubstrate SpecificityStructure-Activity RelationshipX-Ray DiffractionAntigens NeoplasmCarbonic anhydraseNeoplasmsDrug DiscoverymedicineStructure–activity relationshipHumansCloning MolecularCarbonic Anhydrase IXCarbonic Anhydrase InhibitorsDatabases ProteinCarbonic Anhydraseschemistry.chemical_classificationbiologyChemistryLyasebiology.organism_classificationAcetazolamideIsoenzymesEnzymeBiochemistrybiology.proteinMolecular MedicineAcetazolamideCrystallizationBaculoviridaemedicine.drugJournal of medicinal chemistry
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